Paper Title
Facial Landmark-Based Cursor Automation and Drawing Interface
Abstract
Over the years, there has been a significant growth in the demand of secure and tamper-resistant academic certificates management systems. This has given rise to the exposure of limitations inherent in traditional systems, which include inefficiency, high susceptibility to fraud, the obvious dependency on centralized authorities and daunting traceability of academic credentials. The blockchain technology has proven to be an ultimate solution to the recurring problems as it offers information management through immutability, decentralization and security. This paper provides a blockchain technology solution that leverages smart contracts and decentralized architectures where certificates and signatures are securely and permanently stored. Adopting encryption techniques during transmission and storage enhances the authenticity of academic credentials. This solution has a user-friendly interface, ensuring seamless verification process, making it simple for employers to utilise. It is able to detect and prevent fraud as it guarantees authenticity and validity of academic certificates.
Keywords - Blockchain, Information Management, Encryption, Verification Proces